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- W1967809085 abstract "ABSTRACT Thermally developing electro-osmotically generated flow with in circular microtubes with finite Debye-layer thickness has been analyzed. This study focuses on finite Debye-layer effects, a scenario for which the velocity distribution across the tube cross section varies with the ratio of tube radius and Debye length (termed here the relative microtube radius). Numerical solution of the hydrodynamically developed, thermally developing transport for such a flow is presented in this article. The effect of variations in the relative microtube radius and strength of the Joule and viscous heating on the thermal transport are explored over the possible ranges of the governing parameters." @default.
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- W1967809085 date "2005-12-01" @default.
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- W1967809085 title "Thermally Developing Electro-osmotic Convection in Microchannels with Finite Debye-Layer Thickness" @default.
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- W1967809085 doi "https://doi.org/10.1080/10407780500283309" @default.
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